Ramsey-Ewing A, Van Wijnen A J, Stein G S, Stein J L
Department of Cell Biology, University of Massachusetts Medical Center, Worcester 01655.
Proc Natl Acad Sci U S A. 1994 May 10;91(10):4475-9. doi: 10.1073/pnas.91.10.4475.
Histone gene expression is cell cycle regulated at the transcriptional and the post-transcriptional levels. Upon entry into S phase, histone gene transcription is stimulated 2- to 5-fold and peaks within 1-3 hr of the initiation of DNA synthesis. We have delineated the proximal promoter element responsible for cell cycle-dependent transcription of a human histone H4 gene in vivo. Our results indicate that H4 cell cycle-dependent transcriptional regulation is mediated by an 11-base-pair element, the cell cycle element (5'-CTTTCG-GTTTT-3'), that resides in the in vivo protein-DNA interaction site, site II (nucleotides -64 to -24). The H4 cell cycle element functions as a master switch for expression of the FO108 human histone H4 gene in vivo; mutations within the H4 cell cycle element drastically reduce the level of expression as well as abrogate cell cycle-regulated transcription. Furthermore, these mutations result in a loss of binding in vitro of the cognate nuclear factor HiNF-M. In vivo competition analysis indicates that the cell cycle element mediates specific competition for a DNA-binding factor, presumably HiNF-M, that is a rate-limiting step in transcription of this H4 gene.
组蛋白基因表达在转录和转录后水平受到细胞周期的调控。进入S期后,组蛋白基因转录被刺激2至5倍,并在DNA合成开始后的1至3小时内达到峰值。我们已经在体内确定了负责人类组蛋白H4基因细胞周期依赖性转录的近端启动子元件。我们的结果表明,H4细胞周期依赖性转录调控是由一个11个碱基对的元件介导的,即细胞周期元件(5'-CTTTCG-GTTTT-3'),它位于体内蛋白质-DNA相互作用位点,即位点II(核苷酸-64至-24)。H4细胞周期元件在体内作为FO108人类组蛋白H4基因表达的主开关;H4细胞周期元件内的突变会大幅降低表达水平,并消除细胞周期调控的转录。此外,这些突变导致同源核因子HiNF-M在体外的结合丧失。体内竞争分析表明,细胞周期元件介导了对一种DNA结合因子(可能是HiNF-M)的特异性竞争,HiNF-M是该H4基因转录中的限速步骤。